技术资料

会议&展会

PittCon 2011

2011年3月13-18日,美国亚特兰大

  1. Development of a Novel High Performance Micro-furnace Pyrolyzer for Pyrolysis-GC Incorporating a Ceramic Tube Heater for Advanced Characterization of Polymeric Materials
  2. A Simple, One-step Analytical Method for the Analysis of Fatty Acids in Natural Products
  3. Using Specialized MS Additive Libraries to Determine the Composition of Various Tire (Rubber) Formulations
  4. The Direct Analysis of Residual Bisphenol A, Phthalates and Brominated Fire Retardants in Consumer Products Using Thermal Desorption-GC/MS

20th MRS-Japan Academic Symposium

12月20-22日,日本横滨

  1. Development of a new vertical type micro-furnace pyrolyzer incorporating a tubular ceramic heater

International Conference on Polymer Analysis and Characterization & 15th Symposium on Polymer Analysis in Japan

2010年12月8-10日,日本名古屋

  1. Development of a new vertical type of micro-furnace pyrolyzer for pyrolysis-GC incorporating a tube type of ceramic heater
  2. Development of a micro reaction sampler for on-line GC analysis combined with micro-furnace pyrolyzer
  3. The study of method for quantitative analysis of restricted phthalates in poly vinyl chloride by thermal desorption GC/MS analysis
  4. Rapid evaluation of the weatherability of acrylic coating paints for house exterior walls using an on-line micro Ultra Violet Py-GC/MS system

International Rubber Conference 2010

2010年11月17-19日,印度孟买

  1. Identification of Antidegradants in Rubber using Multi-functional pyrolyzer with GC/MS

Japanese Association of Forensic Science and Technology

11月11-12日,日本东京

  1. Development and basic performance of a new multi-functional pyrolyzer with increased productivity

Gulf Coast Conference

2010年10月12-13日,美国德克萨斯州加尔维斯通

  1. The Direct Analysis of Residual Bisphenol A, Phthalates and Brominated Fire Retardants in Consumer Products Using Thermal Desorption-GC/MS
  2. The Direct Analysis of Fatty Acids Found in Various Biomass Matrices Using Reactive Pyrolysis-GC/MS

Japan Society for Analytical Chemistry 59th annual meeting

2010年9月15-17日,日本仙台

  1. Rapid evaluation of weatherability of polymeric materials using online micro-UV irradiation Py-GC/MS technique
  2. New development of polymer analysis using pyrolysis GC/MS
  3. Development of new multi-functional pyrolyzer with greatly increased performance and productivity
  4. Development of a new online micro reaction analysis using a pyrolyzer with a vertical micro-furnace
  5. Quantification of restricted phthalates in polyvinyl chloride using thermal desorption GC/MS
  6. A consideration of micro cryo-focusing trap for capillary GC
  7. Sample preparation using tetramethylammonium hydroxide (TMAH) in reactive pyrolysis GC of condensation polymers
  8. Development of new solid phase extraction element based on organic polymer monolith and basic performance evaluation by thermal desorption GC/MS
  9. Development of a new multi-functional pyrolyzer and peripheral devices and the application of the integrated system

Material Life Society, Japan 21th annual meeting

2010年7月8-9日,日本东京

  1. Evaluation of photo, thermal and oxidative degradation of exterior house paints using online UV irradiation Py-GC/MS and metal halide weather meter techniques.

Pittsburgh Conference 2010

2010年2月28日至3月5日,美国佛罗里达州奥兰多市

  1. A Rapid and Simple Thermal Desorption-GC/MS Method for the Determination of Phthalates in Plastic Children’s Toys
  2. The Direct Determination of Residual Bisphenol A Using Thermal Desorption (TD) – GC/MS
  3. A Novel On-line UV Irradiator for Evaluating the Photo, Thermal and Oxidative Degradation of Polymers
  4. Using Polymer Based MS Libraries to Characterize an Unknown Polymeric Material: case study – What additives and polymer(s) are present in a children’s toy duck

China 15th Symposium on Analytical and Applied Pyrolysis

2009年10月23-25日,中国北京

  1. Development of UV/pyrolysis-GC/MS System Incorporated with On-line Micro-UV Irradiation for Rapid Evaluation of Photo and Oxidative Degradation of Representative Polymers under Appropriate Heating
  2. The Development of A New MS Pyrolyzates Library for The Identification of Polymeric Materials

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